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NADPH oxidase in B cells and macrophages protects against murine lupus by regulation of TLR7
Rachael A. Gordon, Haylee A. Cosgrove, Anthony Marinov, Sebastien Gingras, Jeremy S. Tilstra, Allison M. Campbell, Sheldon I. Bastacky, Michael Kashgarian, Andras Perl, Kevin M. Nickerson, Mark J. Shlomchik
Rachael A. Gordon, Haylee A. Cosgrove, Anthony Marinov, Sebastien Gingras, Jeremy S. Tilstra, Allison M. Campbell, Sheldon I. Bastacky, Michael Kashgarian, Andras Perl, Kevin M. Nickerson, Mark J. Shlomchik
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Research Article

NADPH oxidase in B cells and macrophages protects against murine lupus by regulation of TLR7

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Abstract

Loss of NADPH oxidase (NOX2) exacerbates systemic lupus erythematosus (SLE) in mice and humans, but the mechanisms underlying this effect remain unclear. To identify the cell lineages in which NOX2 deficiency drives SLE, we employed conditional KO and chimeric approaches to delete Cybb in several hematopoietic cell lineages of MRL.Faslpr SLE-prone mice. Deletion of Cybb in macrophages/monocytes exacerbated SLE nephritis, though not to the degree observed in the Cybb global KOs. Unexpectedly, the absence of Cybb in B cells resulted in profound glomerulonephritis and interstitial nephritis, rivaling that seen with global deletion. Furthermore, we identified that NOX2 is a key regulator of TLR7, a driver of SLE pathology, both globally and specifically in B cells. This is mediated in part through suppression of TLR7-mediated NF-κB signaling in B cells. Thus, NOX2’s immunomodulatory effect in SLE is orchestrated not only by its function in the myeloid compartment, but through a pivotal role in B cells by selectively inhibiting TLR7 signaling.

Authors

Rachael A. Gordon, Haylee A. Cosgrove, Anthony Marinov, Sebastien Gingras, Jeremy S. Tilstra, Allison M. Campbell, Sheldon I. Bastacky, Michael Kashgarian, Andras Perl, Kevin M. Nickerson, Mark J. Shlomchik

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Figure 7

Cybb-knockout B cells have increased NF-κB pathway activation after TLR7 stimulation.

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Cybb-knockout B cells have increased NF-κB pathway activation after TLR...
(A) FACS analysis of phosphorylated p65 in C57BL/6 WT (n = 8, circles) and C57BL/6 Cybb-KO (n = 7, triangles) marginal zone B cells stimulated with 2.5 μg/mL TLR7 agonist CL097 plus 20 μg/mL anti-IgM (left panel) and representative flow plots showing p-p65 upregulation after CL097 plus anti-IgM stimulation (right panel). (B) Similarity score quantifying p65 nuclear translocation in C57BL/6 WT (circles) and C57BL/6 Cybb-KO (triangles) marginal zone B cells after no stimulation (n = 8), 2.5 μg/mL TLR7 agonist CL097 (n = 8), 2.5 μg/mL TLR7 agonist CL097 plus 20 μg/mL anti-IgM (n = 8), 1000 U/mL pretreatment with catalase followed by CL097 plus anti-IgM (n = 4), or 100 μM pretreatment with hydrogen peroxide followed by CL097 plus anti-IgM (n = 8). (C) Similarity score quantifying p65 nuclear translocation in C57BL/6 Cybb WT (circles) and C57BL/6 Cybb-KO (triangles) marginal zone B cells after no stimulation (n = 8), 10 μg/mL TLR9 agonist CpG ODN 1826 (n = 8), and 10 μg/mL TLR9 agonist CpG ODN 1826 plus 20 μg/mL anti-IgM (WT n = 8 and Cybb-KO n = 7). Scatter plots display data from individual samples from individual mice, with black lines showing median values. Two-way ANOVA with Holm-Šidák correction was used to determine statistical significance between WT and Cybb-KO samples; 2-tailed Student’s t tests were used to determine statistical significance of catalase treatment within each genotype. *P < 0.05, ***P < 0.001.

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